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  5. Mechanical Model of Globular Transition in Polymers

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Article
en
2014

Mechanical Model of Globular Transition in Polymers

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en
2014
Vol 80 (1)
Vol. 80
DOI: 10.1002/cplu.201402203

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George M M Whitesides
George M M Whitesides

Harvard University

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Simon Tricard
Robert F. Shepherd
Claudiu A. Stan
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Abstract

Abstract In complex, multicomponent systems, polymers often undergo phase transitions between distinct conformations. This paper reports a millimeter‐scale granular model of coil‐to‐globule transitions: one “polymer” chain—a cylinders‐on‐a‐string “pearl necklace”—and many spheres, all shaken on a horizontal surface. It is possible to describe the behavior of this granular system by using formalisms generally used in statistical physics of polymers. Two sets of experiments allowed the observation of first‐ and second‐order coil‐to‐globule transitions. The model shows that the competition between long‐ and short‐range interactions leads to a first‐order transition. Well‐designed granular system represents another kind of approach to the study of polymer phase transitions and might inspire future designs of polymer‐like mesoscale systems.

How to cite this publication

Simon Tricard, Robert F. Shepherd, Claudiu A. Stan, Phillip W. Snyder, Rebecca Cademartiri, Danny Zhu, Igor S. Aranson, Eugene I. Shakhnovich, George M M Whitesides (2014). Mechanical Model of Globular Transition in Polymers. , 80(1), DOI: https://doi.org/10.1002/cplu.201402203.

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Publication Details

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Article

Year

2014

Authors

9

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0

Total Files

0

Language

en

DOI

https://doi.org/10.1002/cplu.201402203

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